Asymptotics of physical solutions to the Lorentz-Dirac equation for planar motion in constant electromagnetic fields; Physical Review E; Vol. 83, iss. 6

Detaylı Bibliyografya
Parent link:Physical Review E: Scientific Journal
Vol. 83, iss. 6.— 2011.— [066606, 12 p.]
Yazar: Kazinski P. O.
Müşterek Yazar: Национальный исследовательский Томский политехнический университет Физико-технический институт Кафедра высшей математики и математической физики
Diğer Yazarlar: Shipulya M. A. Mikhail Alekseevich
Özet:Title screen
We present a study of planar physical solutions to the Lorentz-Dirac equation in a constant electromagnetic field. In this case, we reduced the Lorentz-Dirac equation to one second-order differential equation. We obtained the asymptotics of physical solutions to this equation at large proper times. It turns out that, in a crossed constant uniform electromagnetic field with vanishing invariants, a charged particle enters a universal regime at large times. We found that the ratios of momentum components that tend to constants are determined only by the external field. This effect is essentially due to a radiation reaction. There is no such effect for the Lorentz equation in this field.
Режим доступа: по договору с организацией-держателем ресурса
Dil:İngilizce
Baskı/Yayın Bilgisi: 2011
Konular:
Online Erişim:https://doi.org/10.1103/PhysRevE.83.066606
Materyal Türü: Elektronik Kitap Bölümü
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=667557

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330 |a We present a study of planar physical solutions to the Lorentz-Dirac equation in a constant electromagnetic field. In this case, we reduced the Lorentz-Dirac equation to one second-order differential equation. We obtained the asymptotics of physical solutions to this equation at large proper times. It turns out that, in a crossed constant uniform electromagnetic field with vanishing invariants, a charged particle enters a universal regime at large times. We found that the ratios of momentum components that tend to constants are determined only by the external field. This effect is essentially due to a radiation reaction. There is no such effect for the Lorentz equation in this field. 
333 |a Режим доступа: по договору с организацией-держателем ресурса 
461 |t Physical Review E  |o Scientific Journal 
463 |t Vol. 83, iss. 6  |v [066606, 12 p.]  |d 2011 
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